Gamma Interferon-Induced Guanylate Binding Protein 1 Is a Novel Actin Cytoskeleton Remodeling Factor

Author:

Ostler Nicole1,Britzen-Laurent Nathalie1,Liebl Andrea1,Naschberger Elisabeth1,Lochnit Günter2,Ostler Markus3,Forster Florian4,Kunzelmann Peter5,Ince Semra6,Supper Verena4,Praefcke Gerrit J. K.7,Schubert Dirk W.5,Stockinger Hannes4,Herrmann Christian6,Stürzl Michael1

Affiliation:

1. Division of Molecular and Experimental Surgery, University Medical Center Erlangen, Friedrich Alexander University of Erlangen-Nuremberg, Erlangen, Germany

2. Faculty of Medicine, Institute of Biochemistry, Justus Liebig University, Giessen, Germany

3. Institute of Physics, Chemnitz University of Technology, Chemnitz, Germany

4. Molecular Immunology Unit, Institute for Hygiene and Applied Immunology, Center for Pathophysiology, Infectiology and Immunology, Medical University of Vienna, Vienna, Austria

5. Institute of Polymer Materials, Friedrich Alexander University of Erlangen-Nuremberg, Erlangen, Germany

6. Physical Chemistry I, Ruhr University Bochum, Bochum, Germany

7. Institute for Genetics, University of Cologne, Cologne, Germany

Abstract

ABSTRACT Gamma interferon (IFN-γ) regulates immune defenses against viruses, intracellular pathogens, and tumors by modulating cell proliferation, migration, invasion, and vesicle trafficking processes. The large GTPase guanylate binding protein 1 (GBP-1) is among the cellular proteins that is the most abundantly induced by IFN-γ and mediates its cell biologic effects. As yet, the molecular mechanisms of action of GBP-1 remain unknown. Applying an interaction proteomics approach, we identified actin as a strong and specific binding partner of GBP-1. Furthermore, GBP-1 colocalized with actin at the subcellular level and was both necessary and sufficient for the extensive remodeling of the fibrous actin structure observed in IFN-γ-exposed cells. These effects were dependent on the oligomerization and the GTPase activity of GBP-1. Purified GBP-1 and actin bound to each other, and this interaction was sufficient to impair the formation of actin filaments in vitro , as demonstrated by atomic force microscopy, dynamic light scattering, and fluorescence-monitored polymerization. Cosedimentation and band shift analyses demonstrated that GBP-1 binds robustly to globular actin and slightly to filamentous actin. This indicated that GBP-1 may induce actin remodeling via globular actin sequestering and/or filament capping. These results establish GBP-1 as a novel member within the family of actin-remodeling proteins specifically mediating IFN-γ-dependent defense strategies.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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